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Effect of lipid modification on the physicochemical, structural, antigenic and immunoprotective properties of Haemophilus influenzae outer membrane protein P6.

The outer membrane lipoprotein, P6 of Haemophilus influenzae was studied to determine the importance of the native palmitoyl moiety on its physicochemical and immunological properties. A recombinant P6 (rP6) molecule devoid of lipidation signal sequence was expressed in Escherichia coli and its properties were compared to those of the palmitylated protein purified from H. influenzae. The isoelectric point of rP6 was more acidic than that of the native protein and also exhibited less secondary structure than P6 as judged by circular dichroism. However, both forms of P6 induced identical P6-specific antibody titers in guinea pigs when Freund's adjuvant was used. These antisera reacted with a panel of overlapping P6 peptides in a comparable manner and in addition, rabbit antisera raised against the P6 peptides reacted equally well with P6 and rP6. Furthermore, all human convalescent sera tested exhibited similar anti-P6 and anti-rP6 antibody titers. However, rP6 was less immunogenic than P6 when administered either without adjuvant or in alum and when tested in competitive inhibition studies with anti-P6 antibodies, was a less effective inhibitor than native P6, suggesting a diminution in some of the antigenic activity of rP6. In spite of these differences, rP6 was capable of eliciting a protective antibody response against live H. influenzae type b challenge in a modified infant rat model of bacteremia. These findings demonstrate that the non-fatty acylated rP6 could possibily be substituted for native P6 in a vaccine against H. influenzae.

Amino Acid Sequence↗

Protein- and lipid modification of natural bovine surfactant. Effects in experimental lung failure with special consideration of the response in neonates.

UNLABELLED: Surfactant therapy does not lead to a uniform, optimal and sustained effect on gas exchange in neonatal respiratory distress syndrome (RDS) and acute respiratory distress syndrome (ARDS). The aim of the present study therefore was to compare the effects of a lipid-enriched and protein-modified natural surfactant preparations with a licensed, clinically used bovine surfactant preparation - SF-Ril (Alveofact). METHODS: SF-Ril was enriched with phosphatidylglycerol, sphingomyeline, phosphatidylethanolamine plasmalogen, phosphatidylethanolamine. Furthermore, SF-Ril was modified with increased surfactant protein B (SP-B)/surfactant protein C (SP-C) content and finally a mercaptoethanol (ME) treated preparation for breaking the sulfhydril bondage of SP-B/SP-C by chemical reduction in methylene chloride using ME was developed. Finally ME was removed by vacuum extraction. These modified surfactants were tested at a dosage of 100 mg/ kg each in a model of respiratory failure induced by lung lavage in male adult rats and compared with SF-Ril at an identical dosage. Mechanical ventilation was standardised with fraction of inspiratory oxygen (FiO2) 1.0 and time-cycled pressure limited ventilation 16/0.8 cmH2O before and 26/6 cmH2O (peak inspiratory pressure/positive endexpiratory pressure) after lung lavage (target arterial oxygen pressure [pa02] < 100 mmHg), respiratory rate 36/min, inspiration/expiration time ratio 1:2. RESULTS: During the observation period of 120 min, the sphingomyeline substituted and protein-modified (ME reduced) surfactant preparations exerted improved and sustained oxygenation compared with SF-Ril. Similar effects were observed for tidal volumes. All other preparations were equal or inferior to SF-Ril in our model. CONCLUSION: For the development of surfactant preparations less prone for inactivation the above mentioned data may provide useful information, provided they can be confirmed in further investigations employing other alternative models.

Animals↗

Biological and therapeutic potential of membrane lipid modification in tumors.

The membrane fatty acid composition of cancer cells can be modified either in culture or during growth in animals without disrupting basic membrane or cellular integrity. Only fatty acids are affected; no changes occur in membrane cholesterol, phospholipid, or protein content. There are changes in membrane physical properties and certain cellular functions, including carrier-mediated transport, receptor binding, ion channels, and eicosanoid production. Fatty acid modification also can enhance the sensitivity of the cells to hyperthermia and Adriamycin. This technique provides a new approach to understanding the membrane properties of neoplastic cells. Membrane fatty acid modification also may be of potential value as a therapeutic approach designed to augment the cytotoxicity of other antineoplastic therapies.

Animals↗

A lipoprotein signal peptide plus a cysteine residue at the amino-terminal end of the periplasmic protein beta-lactamase is sufficient for its lipid modification, processing and membrane localization in Escherichia coli.

By genetic exchange and in vitro mutagenesis a hybrid beta-lactamase was constructed that contained the pCloDF13-encoded bacteriocin release protein signal peptide plus a cysteine residue coupled to the mature portion of beta-lactamase. Immunoblotting, labelling with [3H]palmitate in the presence and absence of globomycin, and pulse-chase experiments revealed that this hybrid construct is modified with lipid and processed into a lipid-modified beta-lactamase. Subcellular localization studies revealed that this hybrid is localized both in the cytoplasmic and outer membranes of Escherichia coli cells. A mutant derivative with an incomplete lipobox (LVG instead of LVAC+1) was not processed and was found in the cytoplasmic membranes.

Amino Acid Sequence↗

beta2-Integrin and lipid modifications indicate a non-antioxidant mechanism for the anti-atherogenic effect of dietary coenzyme Q10.

Dietary supplementation with coenzyme Q (CoQ) has been proposed to have anti-atherogenic effects by virtue of its antioxidant capacity. To investigate this question, the leukocyte status of 5 males and 5 females (52-68 years) was evaluated before and after supplementation with 200mg CoQ/day for 5 and 10 weeks. CoQ was selectively taken up by mononuclear cells and alpha-tocopherol increased in polynuclear and mononuclear cells. The expression of beta2-integrin CD11b and complement receptor CD35 on the plasma membrane of resting and stimulated monocytes was significantly decreased upon dietary CoQ. Fatty acid and aldehyde analysis revealed that there was a selective increase of arachidonic acid and plasmalogens in only mononuclear cells. These selective lipid changes are not consistent with a general improvement in antioxidant status and indicate that CoQ most likely inhibits a phospholipase A2. Thus, these results strongly suggest that the anti-atherogenic effects of CoQ be mediated by other mechanisms beside its antioxidant protection.

Aged↗

Lipid modification during cytodifferentiation of Tetrahymena vorax. Whole cell phospholipids and triacylglycerols of microstomal and macrostomal phenotypes.

Microstomal cells of the ciliate Tetrahymena vorax V2S can be induced to undergo cytodifferentiation to form an alternate phenotype known as the macrostomal cell; however, sublines of T. vorax exist that respond differently to methods that induce macrostomal cell formation. The phospholipid- and triacylglycerol-bound fatty acid compositions of microstomal and macrostomal cells of a high-transforming subline (designated 3-C) were determined and compared to similar data from cells of a low-transforming subline (designated Ala). Differences in fatty acid composition were found between the two phenotypes as well as between the different sublines. Some change in the distribution of radioactive acetate and lauric acid into phospholipid classes of the different subline was observed, and evidence was also obtained that indicated changes in the relative amounts of the sterol-like pentacyclic triterpenoid tetrahymanol. A limited analysis of the lipid composition of stomatin revealed the presence of small amounts of tetrahymanol, phospholipid and free fatty acid. Stomatin is the naturally produced material obtained from T. pyriformis that triggers differentiation in T. vorax. The existence of a low-transforming subline provides a powerful experimental tool for elucidating the underlying biochemical and molecular mechanisms that control cytodifferentiation in T. vorax and possibly in other eukaryotic cells.

Acetates↗

The role of phospholipases in lipid modification and atherosclerosis.

Phospholipases have received wide attention as it has become clear that several isoforms of the phospholipase family play a role in onset and progression of atherosclerosis. The release of free fatty acids (FFA) and lysophospholipids (lysoPL) provide metabolites for various inflammatory pathways, and this has been considered the main mechanism of phospholipase-driven inflammation. However, generation of FFA and lysoPL are only part of the story. The induction of low-density phospholipoprotein (LDL) aggregation and accumulation, receptor binding, co-regulation with cyclooxygenase (COX) and lip-oxygenase (LO) pathways, internalization through heparan sulfate proteoglycan (HSPG) shuttling, and crosstalk between phospholipases all play a role in atherosclerosis.Group IIA phospholipase has long been considered a key enzyme in the initiation of various inflammatory diseases, but new data also indicate a role in the subsequent resolution of inflammatory processes. Recently, secreted group V and group X phospholipase and platelet activating factor acetylhydrolase (PAF-AH) are also recognized as important enzymes in atherosclerosis, modifying LDL and leading to lipid accumulation. The phospholipases and their function in atherosclerosis are not fully under-stood. Future investigations can deliver better insight in the complex role of these enzymes. The present review summarizes the current state of phospholipase research related to atherosclerosis.

Animals↗

[Effect of GABA on phosphoinositide cycle and membrane lipid modification in the brain synaptosomes of rats in hypokinesia].

The influence of a 30-day hypokinesia on the phosphoinositide cycle (PIC) initiation and on the inclusion of [14C]-arachidonic acid into cerebral synaptosome phospholipids was studied in rats. The results show that the catabolism of phospholipids prevails on the background of signal transduction in synaptosomes on the 30th day of hypokinesia. The effect of gamma-aminobutyric acid (GABA) is manifested by a sharp increase in the PIC activity 5 sec upon initiation and leads to normalization of the PIC activity in the late stage (5 min).

Animals↗